Simplified model to predict incipient flooding/dehydration in proton exchange membrane fuel cells

被引:2
|
作者
Maharudrayya, S. [1 ]
Jayanti, S. [1 ]
Deshpande, A. P. [1 ]
机构
[1] Indian Inst Technol, Dept Chem Engn, Madras 600036, Tamil Nadu, India
来源
关键词
D O I
10.1115/1.2744055
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Proper water management is critical for near-ambient temperature operation of a fuel cell. A simplified water balance model has been developed to predict when incipient flooding/dehydration may take place. The present model is based on multicomponent diffusion in the electrodes and molar balance in the flow channels. The overall model is in the form of a closed-form expression for the critical or threshold or balance current density at which the water production rate and the water vapor evacuation rate are exactly balanced. The model incorporates the influence of the operating conditions, properties of electrodes, and flow and geometric parameters in the gas channels on the balance current density. Predictions from the model of the state-incipient flooding or dehydration-of operation of the fuel cell agree well with the available experimental data. Using the model, a parametric study has been conducted over a range of parameters.
引用
收藏
页码:357 / 364
页数:8
相关论文
共 50 条
  • [1] An improved model to predict flooding/dehydration in PEM fuel cells
    Maharudrayya, S.
    Jayanti, S.
    Deshpande, A. P.
    [J]. Proceedings of the 3rd International Conference on Fuel Cell Science, Engineering, and Technology, 2005, : 71 - 77
  • [2] Impedance study of membrane dehydration and compression in proton exchange membrane fuel cells
    Le Canut, Jean-Marc
    Latham, Ruth
    Merida, Walter
    Harrington, David A.
    [J]. JOURNAL OF POWER SOURCES, 2009, 192 (02) : 457 - 466
  • [3] Anode partial flooding modelling of proton exchange membrane fuel cells: Model development and validation
    Xing, Lei
    Du, Shangfeng
    Chen, Rui
    Mamlouk, Mohamed
    Scott, Keith
    [J]. ENERGY, 2016, 96 : 80 - 95
  • [4] Simplified proton exchange membrane fuel cells for space and terrestrial applications
    Dhar, HP
    Lewinski, KA
    Tripathi, VK
    [J]. SPACE TECHNOLOGY AND APPLICATIONS INTERNATIONAL FORUM - 1998, PTS 1-3: 1ST CONF ON GLOBAL VIRTUAL PRESENCE; 1ST CONF ON ORBITAL TRANSFER VEHICLES; 2ND CONF ON APPLICAT OF THERMOPHYS IN MICROGRAV; 3RD CONF ON COMMERCIAL DEV OF SPACE; 3RD CONF ON NEXT GENERAT LAUNCH SYST; 15TH SYMP ON SPACE NUCL POWER AND PROPULSION, 1998, (420): : 679 - 684
  • [5] Diagnostic tool to detect electrode flooding in proton-exchange-membrane fuel cells
    He, WS
    Lin, GY
    Nguyen, TV
    [J]. AICHE JOURNAL, 2003, 49 (12) : 3221 - 3228
  • [6] Approaches to avoid flooding in association with pressure drop in proton exchange membrane fuel cells
    Li, Yuehua
    Pei, Pucheng
    Wu, Ziyao
    Ren, Peng
    Jia, Xiaoning
    Chen, Dongfang
    Huang, Shangwei
    [J]. APPLIED ENERGY, 2018, 224 : 42 - 51
  • [7] A model and simulation of cathode flooding and drying on unsteady proton exchange membrane fuel cell
    A.Bakhtiar
    KIM Young-Bok
    YOU Jin-Kwang
    YOON Jung-In
    CHOI Kwang-Hwan
    [J]. Journal of Central South University, 2012, 19 (09) : 2572 - 2577
  • [8] A model and simulation of cathode flooding and drying on unsteady proton exchange membrane fuel cell
    Bakhtiar, A.
    Kim Young-Bok
    You Jin-Kwang
    Yoon Jung-In
    Choi Kwang-Hwan
    [J]. JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2012, 19 (09) : 2572 - 2577
  • [9] Proton exchange membrane fuel cells
    Vishnyakov, V. M.
    [J]. VACUUM, 2006, 80 (10) : 1053 - 1065
  • [10] Fractional order model for diagnosis of flooding and drying of the proton exchange membrane fuel cell
    Laribi, Slimane
    Mammar, Khaled
    Arama, Fatima Zohra
    Ghaitaoui, Touhami
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (66) : 33287 - 33299